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PMID: 2999149 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't Research Support, U.S. Gov't, P.H.S.

Role of Ni in coupling angiotensin receptors to inhibition of adenylate cyclase in hepatocytes.

The Journal of biological chemistry ·Vol. 260 ·No. 30 ·1985-12-25 ·Pages 16200-9

Pobiner BF, Hewlett EL, Garrison JC

Abstract

Angiotensin II can inhibit glucagon-stimulated cyclic AMP production in hepatocytes and adenylate cyclase activity in hepatic membranes. Pertussis toxin, an exotoxin produced by Bordetella pertussis, was used to investigate the role of the inhibitory guanine nucleotide-binding regulatory protein of adenylate cyclase (Ni) in coupling angiotensin receptors to the adenylate cyclase system. An assay was developed using [32P] NAD+ to quantitate the amount of Ni protein in the membrane and the extent of its ADP-ribosylation catalyzed by toxin. The ability of angiotensin to inhibit adenylate cyclase and interact with its receptor was compared with the degree of modification of Ni in membranes prepared from isolated hepatocytes. In control membranes angiotensin II inhibited basal adenylate cyclase by 35%. When all of the Ni molecules in the membrane were ADP-ribosylated, angiotensin did not inhibit adenylate cyclase. However, the attenuation of angiotensin's effect on cyclase was not linearly correlated with the degree of modification of Ni; ADP-ribosylation of greater than 80% of the Ni was required before a reduction of the angiotensin effect was observed. A possible explanation for this finding is an excess of Ni molecules in the membrane (approximately 3.4 pmol/mg of membrane protein) over angiotensin II receptors (approximately 1.2 pmol/mg of membrane protein). 125I-angiotensin bound to sites in the membrane with two affinities. Computer fitting of the binding isotherms yielded parameters of N1 = 279 fmol/mg protein, Kd1 = 0.2 nM; N2 = 904 fmol/mg protein, Kd2 = 1.4 nM. When all of the Ni molecules in the membrane were ADP-ribosylated, angiotensin bound to only one site with binding parameters of N = 349 fmol/mg protein, Kd = 0.4 nM. GTP-gamma-S caused a 7-fold increase in the Kd of this site to 2.7 nM. Overall, the data indicate that the Ni protein mediates the effect of angiotensin on adenylate cyclase. The observation that GTP-gamma-S can markedly decrease the affinity of angiotensin receptors when all Ni molecules are ADP-ribosylated suggests that angiotensin receptors may couple to other GTP-binding proteins which may mediate the effects of angiotensin in other signal transduction systems.

MeSH Terms
Adenosine Diphosphate Ribose/metabolism Adenylate Cyclase Toxin Adenylyl Cyclase Inhibitors Angiotensin II/metabolism Animals Cell Membrane/metabolism Cyclic AMP/metabolism GTP-Binding Proteins/isolation & purification,metabolism Glucagon/pharmacology Kinetics Liver/drug effects,metabolism Male Pertussis Toxin Rats Rats, Inbred Strains Receptors, Angiotensin/metabolism Receptors, Cell Surface/metabolism Virulence Factors, Bordetella/pharmacology
Chemicals
Adenylate Cyclase Toxin Adenylyl Cyclase Inhibitors Receptors, Angiotensin Receptors, Cell Surface Virulence Factors, Bordetella Angiotensin II Adenosine Diphosphate Ribose Glucagon Cyclic AMP Pertussis Toxin GTP-Binding Proteins
Authors & Affiliations
3 authors, click to expand affiliations / ORCID
Pobiner B F
Hewlett E L
Garrison J C
Article Info
Journal
The Journal of biological chemistry
Abbr.
J Biol Chem
ISSN
0021-9258
Published
1985-12-25
Pages
16200-9
Language
English
Region
United States
NLM ID
2985121R
Subset
IM
Grants
NIAID NIH HHS · AI-18000 · United States
NIADDK NIH HHS · AM-19952 · United States
NIADDK NIH HHS · AM-22125 · United States
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